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Structural performance of confined masonry walls retrofitted using ferrocement and GFRP under in-plane cyclic loading

机译:平面循环荷载作用下加筋和玻璃纤维增​​强的密闭砌体墙结构性能

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This paper presents the results of in-plane cyclic loading tests conducted on confined masonry walls retrofitted using low-cost ferrocement and GFRP systems. Ten wall assemblies with a 0.80-scale were built, consisting of a clay masonry panel, two confining columns and a tie beam. The assemblies were tested under a combination of a vertical load and lateral reversed cyclic loading with a displacement controlled loading protocol up to failure. Wall panels had various configurations, namely, solid walls, perforated walls with window and door openings. Two composite materials (ferrocement and GFRP) and three retrofitting configurations (diagonal "X", corner, and full coverage) were investigated. Key experimental results showed that the proposed upgrading techniques improved the lateral resistance of the confined walls by a factor ranging from 25% to 32%with a significant increase in the ductility and energy absorption of the panel ranging from 33% to 85%; however, the improvement in lateral drifts was less significant. Regarding the upgrading configurations, the diagonal "X" and full coverage can help prevent diagonal shear failure especially in tie columns and convert the failure mode to a panel-rocking mode. Additionally, in all retrofitting cases, collapse was significantly delayed by maintaining the wall integrity under large lateral deformations. A good agreement was found by comparing deformed shapes, crack patterns and capacity curves of finite element models included in this study. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了在使用低成本铁框和GFRP系统进行改造的密闭砌体墙上进行的平面内循环荷载测试的结果。建造了十个0.80比例尺的墙组件,包括一个粘土砖,两个约束柱和一个连接梁。在垂直载荷和横向反向循环载荷与直至位移的位移控制载荷方案的组合下对组件进行了测试。墙板具有各种配置,即实心墙,带有窗户和门洞的穿孔墙。研究了两种复合材料(钢筋和GFRP)和三种改装配置(对角“ X”,角和全覆盖)。关键的实验结果表明,所提出的升级技术将密闭墙的侧向阻力提高了25%至32%,而面板的延展性和能量吸收也显着提高了33%至85%。但是,侧向漂移的改善并不明显。关于升级配置,对角线“ X”和全覆盖可帮助防止对角线剪切故障,尤其是在系柱中,并将故障模式转换为面板摇摆模式。此外,在所有翻新案例中,在较大的横向变形下保持壁的完整性可显着延迟倒塌。通过比较本研究中包含的有限元模型的变形形状,裂纹模式和容量曲线,发现了一个很好的协议。 (C)2015 Elsevier Ltd.保留所有权利。

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